Chloroperoxidase (CPO) is a potential biocatalyst for use in asymmetric synthesis. The mechanisms of CPO catalysis are therefore of interest. The halogenation reaction, one of several chemical reactions that CPO catalyzes, is not fully understood and is the subject of this dissertation. The mechanism by which CPO catalyzes halogenation is disputed. It has been postulated that halogenation of substrates occurs at the active site. Alternatively, it has been proposed that hypochlorous acid, produced at the active site via oxidation of chloride, is released prior to reaction, so that halogenation occurs in solution. The free-solution mechanism is supported by the observation that halogenation of most substrates often occurs non-stereospecifical...
AbstractBackground: Chloroperoxidase (CPO) is the most versatile of the hemethiolate proteins, catal...
The late-stage oxidative functionalisation of C-H bonds can be used to circumvent synthetic route re...
Halogens can be very important for active agents as vital parts of their binding mode, on the one ha...
Chloroperoxidase (CPO) is a potential biocatalyst for use in asymmetric synthesis. The mechanisms of...
A novel 'thermodynamic' mechanistic rationale of haloperoxidase catalysis is based on the following ...
<p>The subject of this thesis is the use of haloperoxidases in synthetic organic chemistry. Halopero...
Chloroperoxidase (CPO) is a heme-thiolate enzyme that catalyzes hydrogen peroxide-dependent halogena...
AbstractA novel ‘thermodynamic’ mechanistic rationale of haloperoxidase catalysis is based on the fo...
AbstractBackground: Chloroperoxidase (CPO) is the most versatile of the known heme enzymes. It catal...
The subject of this thesis is the use of haloperoxidases in synthetic organic chemistry. Haloperoxid...
The formation of Compound I (Cpd I), the active species of the enzyme chloroperoxidase (CPO), was st...
95 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1982.Chloroperoxidase catalyzes the...
Chloroperoxidase can utilize chloride, bromide, and iodide ions and catalyze the formation of a carb...
Chlorine dioxide (ClO2) applications to drinking water are limited by the formation of chlorite (ClO...
Tryptophan 7-halogenase catalyzes chlorination of free tryptophan to 7-chlorotryptophan, which is th...
AbstractBackground: Chloroperoxidase (CPO) is the most versatile of the hemethiolate proteins, catal...
The late-stage oxidative functionalisation of C-H bonds can be used to circumvent synthetic route re...
Halogens can be very important for active agents as vital parts of their binding mode, on the one ha...
Chloroperoxidase (CPO) is a potential biocatalyst for use in asymmetric synthesis. The mechanisms of...
A novel 'thermodynamic' mechanistic rationale of haloperoxidase catalysis is based on the following ...
<p>The subject of this thesis is the use of haloperoxidases in synthetic organic chemistry. Halopero...
Chloroperoxidase (CPO) is a heme-thiolate enzyme that catalyzes hydrogen peroxide-dependent halogena...
AbstractA novel ‘thermodynamic’ mechanistic rationale of haloperoxidase catalysis is based on the fo...
AbstractBackground: Chloroperoxidase (CPO) is the most versatile of the known heme enzymes. It catal...
The subject of this thesis is the use of haloperoxidases in synthetic organic chemistry. Haloperoxid...
The formation of Compound I (Cpd I), the active species of the enzyme chloroperoxidase (CPO), was st...
95 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1982.Chloroperoxidase catalyzes the...
Chloroperoxidase can utilize chloride, bromide, and iodide ions and catalyze the formation of a carb...
Chlorine dioxide (ClO2) applications to drinking water are limited by the formation of chlorite (ClO...
Tryptophan 7-halogenase catalyzes chlorination of free tryptophan to 7-chlorotryptophan, which is th...
AbstractBackground: Chloroperoxidase (CPO) is the most versatile of the hemethiolate proteins, catal...
The late-stage oxidative functionalisation of C-H bonds can be used to circumvent synthetic route re...
Halogens can be very important for active agents as vital parts of their binding mode, on the one ha...